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A novel laboratory-scale bioelectrode and anaerobic sludge coupled system was established for the enhancement of p-chloronitrobenzenes (p-ClNB) reductive transformation with addition of magnetite nanoparticles. In this coupled system, the bioelectrodes were supplied with a voltage of 0.8 V and the amount of magnetite nanoparticles was set at 7.4 mL/400 mL. Results showed that high p-ClNB transformation...
The influence of operation conditions such as pH, gas flow rate, temperature, p-chloronitrobenzene concentration, and radical scavenger on the degradation of p-chloronitrobenzene in water by ozone was studied. At the condition of pH=12, Q0=50 mg/L, Q=0.4 L/min, T=288 k, C0=60 mg/L, 98% p-chloronitrobenzene was removed within 25 minutes. Radical scavenger had obvious effects on the degradation of p-chloronitrobenzene,...
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